ADDITION OF MAGNESIUM (Mg) WITH ALUMINA (AL2O3) REINFORCER IN ALUMINUM MATERIAL COMPOSITES ON THE MECHANICAL PROPERTIES AND MICRO STRUCTURES

B. Widodo, A. Sasmito
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Abstract

Aluminum is a widely used and applied material in daily life or in the industrial and automotive world. In order to improve the performance and properties of the application to be used, it needed an alloying element to improve the mechanical properties of the aluminum. Aluminum Matrix Composite (AMC) or better known as aluminum matrix composite is one type of material that has great potential to be developed, due to its good combination and properties such as high strength and hardness, low density, low density, capable of good machining, and its basic ingredients are easily found on the market and cheaper than other materials. This research was conducted using the stir casting process to be able to mix all the compositions contained in aluminum matrix composites and to help the distribution of alumina reinforcing particles (Al2O3) and aluminum matrices be evenly distributed. The parameters used in this casting process are varying the volume fraction of the Al2O3 amplifier by 0.5%; 1.5% and 2.5% plus the magnesium content remains 0.9%. The results showed that the addition of Al2O3 can increase the value of hardness and reduce the value of tensile strength. The highest hardness value was 75.3 HRB at the addition of Al2O3 by 2.5% and the lowest tensile strength value was 7.17 Kgf / mm2 with the percentage of Al2O3 addition of 0.5%.
摘要镁(Mg)与氧化铝(AL2O3)增强剂的加入对铝材料复合材料力学性能和微观组织的影响
铝是一种广泛应用于日常生活或工业和汽车领域的材料。为了改善所要使用的应用的性能和性能,需要一种合金元素来改善铝的机械性能。铝基复合材料(AMC)或更好地称为铝基复合材料,是一种具有很大发展潜力的材料,由于其良好的组合和性能,如高强度和硬度,低密度,低密度,能够很好地加工,其基本成分很容易在市场上找到,比其他材料便宜。本研究采用搅拌铸造工艺进行,使铝基复合材料中含有的所有成分能够混合,并使氧化铝增强颗粒(Al2O3)和铝基均匀分布。铸造工艺参数为:Al2O3放大器体积分数变化0.5%;1.5%和2.5%加上镁的含量仍然是0.9%结果表明,Al2O3的加入可以提高合金的硬度值,降低合金的抗拉强度值。当Al2O3添加量为2.5%时,硬度值最高,为75.3 HRB;当Al2O3添加量为0.5%时,抗拉强度值最低,为7.17 Kgf / mm2。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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